• Title/Summary/Keyword: thermal distribution

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대공간내 인체발열 미고려시의 하계 온열환경 조사 (A Study on the Indoor Thermal Environment of the Large Enclosure Without Cooling Loads from Occupancy in Summer)

  • 정성진;최동호;양정훈;석호태
    • 한국공간구조학회:학술대회논문집
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    • 한국공간구조학회 2008년도 춘계 학술발표회 논문집
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    • pp.3-8
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    • 2008
  • 본 연구에서는 기존 대공간의 냉방시에 발생될 수 있는 분포상의 문제점을 실측실험을 통해 확인하여, 궁극적으로는 대공간의 열환경 개선과 효율적인 냉방설계를 위한 기초데이터를 제시하고자 하였다. 본 연구에서는 인체부하 미고려시의 하계 대공간의 실내온열환경 실측실험을 실시하여 공간내 수평 및 상하온도분포특성, 취출기류의 거동특성, 실내쾌적온열환경 특성, 환기량 평가 등 대공간의 하계 실내온열환경을 포괄적으로 검토하였다.

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대규모 실내경기장의 하계 온열환경 특성 실측조사 - 인체부하 미고려 조건 - (A Study on the Indoor Thermal Environment of the Large Gymnasium Space in Summer - Without Cooling Loads from Occupancy -)

  • 정성진;최동호;양정훈;석호태
    • 한국공간구조학회논문집
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    • 제7권6호
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    • pp.91-101
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    • 2007
  • 본 연구에서는 기존 대규모 실내경기장의 냉방시에 발생될 수 있는 분포상의 문제점을 실측실험을 통해 확인함으로서 궁극적으로는 대공간의 열환경 개선과 효율적인 냉방설계를 위한 데이터를 제시하고자 하였다. 본 연구에서는 인체부하 미고려시의 하절기 대공간의 실내온열환경 실측실험을 비냉방시와 냉방시로 구분하여 실시하였으며 공간내 수평 및 상하온도분포특성, 취출기류의 거동특성, 실내쾌적온열환경 특성, 환기량 평가 등 대공간의 실내온열환경을 포괄적으로 검토하였다.

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스피닝 머신용 대형주축의 열특성에 관한 연구 (A Study on the Thermal Characteristics of Spindle for the Spinning Machine)

  • 정동수;김수태;최대봉;예성봉;설상석
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.555-559
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    • 2005
  • Spinning process is a chipless metal forming method for axis-symmetric parts, which is more economical, efficient and versatile method for producing parts than other sheet metal forming process such as stamping or deep drawing. The large-sized spindle for spinning machine is the equipment to ferm a high-pressure vessel into the demanded shape. The important problem in the spindle system fur spinning machines is to reduce and minimize the thermal effect by motor and bearings. In this study, the effect of heat generation of bearings for the large-sized spindle is considered. Temperature distribution and thermal displacement of the spindle system for spinning machine can be analyzed by using the finite element method. The numerical results are compared with the measured data. The results show that temperature distribution and thermal displacement can be reasonably estimated by using the finite element method and the three dimensional model.

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LARGE SCALE FINITE ELEMENT THERMAL ANALYSIS OF THE BOLTS OF A FRENCH PWR CORE INTERNAL BAFFLE STRUCTURE

  • Rupp, Isabelle;Peniguel, Christophe;Tommy-Martin, Michel
    • Nuclear Engineering and Technology
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    • 제41권9호
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    • pp.1171-1180
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    • 2009
  • The internal core baffle structure of a French Pressurized Water Reactor (PWR) consists of a collection of baffles and formers that are attached to the barrel. The connections are done thanks to a large number of bolts (about 1500). After inspection, some of the bolts have been found cracked. This has been attributed to the Irradiation Assisted Stress Corrosion Cracking (IASCC). The $Electricit\acute{e}$ De France (EDF) has set up a research program to gain better knowledge of the temperature distribution, which may affect the bolts and the whole structure. The temperature distribution in the structure was calculated thanks to the thermal code SYRTHES that used a finite element approach. The heat transfer between the by-pass flow inside the cavities of the core baffle and the structure was accounted for thanks to a strong thermal coupling between the thermal code SYRTHES and the CFD code named Code_Saturne. The results for the CP0 plant design show that both the high temperature and strong temperature gradients could potentially induce mechanical stresses. The CPY design, where each bolt is individually cooled, had led to a reduction of temperatures inside the structures. A new parallel version of SYRTHES, for calculations on very large meshes and based on MPI, has been developed. A demonstration test on the complete structure that has led to about 1.1 billion linear tetraedra has been calculated on 2048 processors of the EDF Blue Gene computer.

Uncertainty Analysis of Dynamic Thermal Rating of Overhead Transmission Line

  • Zhou, Xing;Wang, Yanling;Zhou, Xiaofeng;Tao, Weihua;Niu, Zhiqiang;Qu, Ailing
    • Journal of Information Processing Systems
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    • 제15권2호
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    • pp.331-343
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    • 2019
  • Dynamic thermal rating of the overhead transmission lines is affected by many uncertain factors. The ambient temperature, wind speed and wind direction are the main sources of uncertainty. Measurement uncertainty is an important parameter to evaluate the reliability of measurement results. This paper presents the uncertainty analysis based on Monte Carlo. On the basis of establishing the mathematical model and setting the probability density function of the input parameter value, the probability density function of the output value is determined by probability distribution random sampling. Through the calculation and analysis of the transient thermal balance equation and the steady- state thermal balance equation, the steady-state current carrying capacity, the transient current carrying capacity, the standard uncertainty and the probability distribution of the minimum and maximum values of the conductor under 95% confidence interval are obtained. The simulation results indicate that Monte Carlo method can decrease the computational complexity, speed up the calculation, and increase the validity and reliability of the uncertainty evaluation.

Through-Silicon Via를 활용한 3D NAND Flash Memory의 전열 어닐링 발열 균일성 개선 (Electro-Thermal Annealing of 3D NAND Flash Memory Using Through-Silicon Via for Improved Heat Distribution)

  • 손영서;이광선;김유진;박준영
    • 한국전기전자재료학회논문지
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    • 제36권1호
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    • pp.23-28
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    • 2023
  • This paper demonstrates a novel NAND flash memory structure and annealing configuration including through-silicon via (TSV) inside the silicon substrate to improve annealing efficiency using an electro-thermal annealing (ETA) technique. Compared with the conventional ETA which utilizes WL-to-WL current flow, the proposed annealing method has a higher annealing temperature as well as more uniform heat distribution, because of thermal isolation on the silicon substrate. In addition, it was found that the annealing temperature is related to the electrical and thermal conductivity of the TSV materials. As a result, it is possible to improve the reliability of NAND flash memory. All the results are discussed based on 3-dimensional (3-D) simulations with the aid of the COMSOL simulator.

열전지용 FeS2 미세 분말의 제조 및 열적 안정성 (Preparation and Thermal Stability of FeS2 Fine Powder for Thermal Battery)

  • 최유송;유혜련;정해원;조성백;이영석
    • 공업화학
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    • 제25권1호
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    • pp.72-77
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    • 2014
  • $FeS_2$ 미세 입자가 열전지의 특성에 미치는 영향을 알아보고자, 볼밀법을 이용하여 미세화 입자를 제조하고 그 미세구조 및 열안정성을 평가하였다. $FeS_2$의 평균 입자크기와 입자분포는 볼밀 시간에 따라 변하였다. 평균 입자크기는 10 h 볼밀 처리 후, $98.4{\mu}m$에서 $1.01{\mu}m$로 급격하게 감소하였다. 볼밀 시간이 증가할수록, 입자의 응집이 증가하고 입자 크기의 분포가 넓어지기 때문에 평균 입자크기는 증가하였다. 결국, 170 h의 볼밀을 시행한 후에 가장 좁은 크기의 단일 입자 분포를 가지는 $FeS_2$ 미세 입자를 얻을 수 있었다. 한편, 입자가 분쇄됨에 따라 $FeS_2$의 열 안정성은 불안정해졌으며, 미세 입자 사이즈의 활성화 에너지는 이전의 $FeS_2$보다 27% 낮아졌다.

종양의 온열치료를 위한 마이크로잔 조사장치의 제작과 응용 (Fabrication of Microwave Applicator for Hyperthermia and Thermal Distribution in Tissues)

  • 추성실;이종태;김귀언
    • Radiation Oncology Journal
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    • 제2권1호
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    • pp.11-20
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    • 1984
  • The renewed interest in the use of hyperthermia in cancer therapy is bases on radiobiological and clinical evidence indicated that there may be a significant therapeutic advantage with the use of heat alone or combined with radiation or chemotherapy, There are many methods for generating heat for localized tumor as like radiofrequency, microwave, electromagnetic induction and ultrasound. But it is very difficult to be even thermal dose distribution and stable output of power and then the detection of temperature in tumor is difficult to be precise with thermocouples and semiconductor sensors. We designed the microwave heating generator, dipole antenna applicators and autometic temperature controlled thermocouples for localized hyperthermia on skin and in cavities. 1. The microwave generator with 120 W, 2,450MHz magnetron could be heating up to $40^{\circ}C\~50^{\circ}C\;for\;1\~2$ hours in living tissues. 2. The thermal dose distribution in tissue with microwave was described $42^{\circ}C\~44^{\circ}C$ with in 3 cm depth and $2\~6cm$ diameter area. 3. Skin surface heating applicator with spiral 3 times wave length antenna radiated high Power of microwave. 4, Intracavitary heating applicator with dipole antenna with autometic control temperature sensor kept up continuously constant temperature in tissue. 5. For constant thermal distribution, applied two steps power with 10W microwave after $17\~20W$ during first 10 minutes. 6. The cooling rate by blood flew in living tissue was rised as $10\%$ then meats.

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Dense Thermal 3D Point Cloud Generation of Building Envelope by Drone-based Photogrammetry

  • Jo, Hyeon Jeong;Jang, Yeong Jae;Lee, Jae Wang;Oh, Jae Hong
    • 한국측량학회지
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    • 제39권2호
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    • pp.73-79
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    • 2021
  • Recently there are growing interests on the energy conservation and emission reduction. In the fields of architecture and civil engineering, the energy monitoring of structures is required to response the energy issues. In perspective of thermal monitoring, thermal images gains popularity for their rich visual information. With the rapid development of the drone platform, aerial thermal images acquired using drone can be used to monitor not only a part of structure, but wider coverage. In addition, the stereo photogrammetric process is expected to generate 3D point cloud with thermal information. However thermal images show very poor in resolution with narrow field of view that limit the use of drone-based thermal photogrammety. In the study, we aimed to generate 3D thermal point cloud using visible and thermal images. The visible images show high spatial resolution being able to generate precise and dense point clouds. Then we extract thermal information from thermal images to assign them onto the point clouds by precisely establishing photogrammetric collinearity between the point clouds and thermal images. From the experiment, we successfully generate dense 3D thermal point cloud showing 3D thermal distribution over the building structure.

국내 암석 열전도도 범위와 공간적인 분포 (Spatial analysis and ranges of thermal conductivity of rocks)

  • 심병완;박정민;백승균;김형찬
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2009년도 추계학술대회 논문집
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    • pp.555-555
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    • 2009
  • A web GIS based database system of thermophysical property of rocks in Korea is under construction. Rock samples were randomly collected over the whole country and sample spacings were generally 1 to 10 km. Thermal diffusivity, spedific heat, thermal conductivity, specific heat, density and porosity were measured on a collection of 1,560 rock samples in the laboratory. The sampled rocks were classified into igneous, metamorphic and sedimentary rock types and the variables were statistically studied. The thermal conductivity were compared with thermal diffusivity, porosity and dry density to define any correlations and the distribution of thermal conductivity is characterized by the geostatistical analysis. The optimal mapping of thermal conductivity is very useful as a practical design component for any geothermal systems.

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